paper

Doppler-free saturation of the cascade fluorescence that follows excitation of the transition in atomic rubidium

arXiv:1906.07114

Abstract

We present an experimental scheme that produces Doppler-free spectra of the second resonance transition in atomic rubidium. The experiment uses the saturation of the cascade fluorescence that occurs when thermal rubidium atoms interact with two counterpropagating nm laser beams of comparable intensity. Part of the excited atomic population goes through the level which then decays by emission of nm photons. Narrow dips appear in this otherwise broad nm fluorescence, which allows resolution of the hyperfine structure. A rate equation model is used to interpret the spectra. It is also shown that these narrow peaks can be used to lock the frequency of the nm laser. Using a second beam modulated in frequency produces three sets of spectra with known frequency spacings that can be used to perform an all-optical measurement of the hyperfine splittings of the manifold in rubidium.

17 pages, 5 figures, 3 tables

Cited by in corpus (2)